机构:[1]Department of Urology, Wuhan Third Hospital and Tongren Hospital of Wuhan University, Wuhan 430060, China[2]Department of Pharmacy, Wuhan Third Hospital, Wuhan 430060, China[3]Department of Urology, Huangshi Central Hospital, Affiliated Hospital of Hubei Polytechnic University Huangshi, Huangshi 435000, China[4]Department of Nephrology, Renmin Hospital of Wuhan University, Wuhan 430060, China[5]School of Medicine, Wuhan University of Science and Technology, Wuhan 430060, China[6]Department of Urology, Wuhan Third Hospital, Wuhan 430060, China[7]Central Laboratory, Renmin Hospital of Wuhan University, Wuhan 430060, China
BackgroundRenal fibrosis is a key process in the progression from acute kidney injury (AKI) to chronic kidney disease (CKD), while the intricate mechanisms of renal fibrosis remain obscure. While the signal-transducing adaptor protein 2 (STAP2) was well-studied for its notable function in inflammation and immune-related disorders, its specific implication in renal fibrosis remains unclear. This study assessed the mechanism by which STAP2 could promote the progression of renal fibrosis.MethodsThe expression level of STAP2 in fibrotic human samples, murine fibrosis models, and cellular fibrosis models was measured, respectively. Subsequently, immunoprecipitation (IP), mass spectrometry, and RNA sequencing (RNA-seq) were employed to identify HSP27 as an interacting protein and the PI3K-AKT signaling pathway. STAP2 was thereafter knocked down or overexpressed in both in vivo and in vitro models to assess the expression levels of pathway-related and fibrosis-related proteins. Finally, the important role of STAP2 in the fibrosis process in animal models induced by ischemia-reperfusion injury (IRI) and cisplatin was validated.ResultsFunctionally, in vivo assays demonstrated that the genetic knockout of STAP2 could remarkably mitigate epithelial-mesenchymal transition (EMT), diminish inflammatory cell infiltration, and reduce collagen deposition in mice with renal fibrosis. Conversely, in vitro assays employing STAP2-overexpressing cell models exacerbated the expression levels of fibrosis markers. The outcomes uncovered a potential mechanism by which STAP2 could modulate renal fibrosis through its impact on the expression level of phosphorylated HSP27, as well as modulating the PI3K/AKT signaling pathway.ConclusionsThis comprehensive investigation delineated the noticeable function of STAP2 in the advancement of renal fibrosis, and the outcomes might contribute to the development of targeted therapies concentrated on STAP2 to mitigate renal fibrosis.
基金:
National Key R&D Program of China (No.2023YFC3605500, 2023YFC3605502), Hubei Leading Talent Program in Medicine and Wuhan Application Foundation and Frontier Project (No.2020020601012209).
第一作者机构:[1]Department of Urology, Wuhan Third Hospital and Tongren Hospital of Wuhan University, Wuhan 430060, China
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推荐引用方式(GB/T 7714):
Yuan Yuan,Wei Xiao,Xiong Xi,et al.STAP2 promotes the progression of renal fibrosis via HSP27[J].JOURNAL OF TRANSLATIONAL MEDICINE.2024,22(1):doi:10.1186/s12967-024-05776-6.
APA:
Yuan, Yuan,Wei, Xiao,Xiong, Xi,Wang, Xiong,Jiang, Wei...&Luo, Pengcheng.(2024).STAP2 promotes the progression of renal fibrosis via HSP27.JOURNAL OF TRANSLATIONAL MEDICINE,22,(1)
MLA:
Yuan, Yuan,et al."STAP2 promotes the progression of renal fibrosis via HSP27".JOURNAL OF TRANSLATIONAL MEDICINE 22..1(2024)